In Vivo Virulence Gene Expression in Acute Otitis Media
In Vivo Virulence Gene Expression in Acute Otitis Media
批准号:
7304053
负责人:
HA-SHENG LI-KOROTKY
金额:
$6.97万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-12-16 至 2009-08-30
关键词:
Academic Medical CentersAcuteAffectAirAntibiotic ResistanceAutolysisBacteremiaBacterial RNABindingBiological AssayBloodCell LineCell surfaceCessation of lifeClinicalCodeComplexCountCoupledCritiquesDataDiagnosticDiffuseDisruptionDoctor of PhilosophyEnsureEnvironmentEnvironmental Risk FactorEnvironmental air flowEpithelial CellsEustachian TubeEvaluationFunctional disorderGasesGene ExpressionGene TargetingGenesGoalsGrowthHaemophilus influenzaeHost DefenseHumanImmune responseIn Situ HybridizationIn VitroInfantInfectionInterruptionInvadedLaboratoriesLeadLettersLinkMediator of activation proteinMedicalMeningitisMethodsMicrobiologyModelingMolecularMorphologyMucous MembraneMusNasopharynxNumbersObstructionOhioOtitis MediaOtolaryngologyOxygenPathogenesisPatternPhasePhenotypePneumococcal InfectionsPneumoniaPolymerase Chain ReactionProtocols documentationRNARattusResearchResearch DesignResearch PersonnelResourcesScreening procedureSterilityStreptococcus pneumoniaeStructureSuggestionSurfaceSurface PropertiesSystemic infectionTestingTimeTranscriptTubeTympanostomyVaccinesVariantVertebratesVirulenceVirulence FactorsVirulentWorkbaseear infectionexperiencein vivomicrobialmiddle earpathogenpressureprofessorresponsesuccess
中文摘要
肺炎链球菌是急性中耳炎(OM)的主要病因,造成超过100万人死亡
英文摘要
Streptococcus pneumoniae is a leading cause of acute otitis media (OM)and responsible for over 1 million
infant deaths each year from pneumonia, meningitis, and bacteremia. With the emergence and
dissemination of antibiotic resistant pneumococcal strains, coupled to changing patterns of virulence and the
inadequacy of available vaccines, medical management of these "pneumococcal diseases" has become
increasingly complex and costly. S. pneumoniae is highly adapted to and colonizes asymptomatically the
mucosal surface of the nasopharynx. The ability of S. pneumoniae to bind to the host middle ear mucosa
(MEM) is a critical step to initiate OM. The mechanisms that control S. pneumoniae either to colonize the
nasopharynx or to invade to the MEM causing OM are unclear. S. pneumoniae undergoes spontaneous
intrastrain variations in colony morphology that affect multiple cell-surface structures, pathogen-host
interaction and virulence. Transparent (T) variants are more capable of colonizing the nasopharynx, whereas
the opaque (O) variants show increased virulence during systemic infections. Environmental factors (e.g.,
oxygen and pressure) and several genes associated with the phenotypic variations were identified. Middle
ear (ME)is a sterile and air-filled cavity and its volume of the contained gas determines its pressure, which is
regulated by mucosal-blood diffuse and Eustachian tube (ET)function. ET is a critical passagewayfrom the
nasopharynx into the ME. The dynamic interactions between S. pneumoniae and host ET function-ME
environment, which trigger pathogen to breach host defense, translocate and invade to the ME leading to
infection have yet to be established. We hypothesize that ET dysfunction and associated ME gas/pressure
dysregulation induce the predominant selection of the virulent phenotypes and enhance pneumococcal
virulence, which cause acute OM. We have three specific aims: Aim 1 is to identify pneumococcal
phenotypic variations during ME gas/pressure dysregulations in vivo (a rat model of acute OM constructed
with ET obstruction followed by ME inoculation of either T or O variants, then by ventilation tube insertion)
and in vitro (human ME epithelial cell line exposed to selective pressures and T or O variants). Aim 2 is to
assess gene expression coding for virulence factors that were previously tested either in vivo or in vitro to be
associated with pneumococcal phase variations and virulence. Aim 3 is to link host response to phenotypic
variations and virulence by evaluation of the selected proinflammatory mediators in the MEM.Identification
of pneumococcal variants and associated virulence genes that are preferentially transcribed during the
phenotypic switch under the altered ME environment is central to our understanding of how pneumococcus
mounts a successful ME infection. The information gained from this study holds a promise for clinical
molecular diagnostics and therapy by targeted gene interruptions of virulence.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
Interaction of phase variation, host and pressure/gas composition: pneumococcal gene expression of PsaA, SpxB, Ply and LytA in simulated middle ear environments.
相位变化、宿主和压力/气体成分的相互作用:模拟中耳环境中 PsaA、SpxB、Ply 和 LytA 的肺炎球菌基因表达。
DOI:
10.1016/j.ijporl.2009.07.007
发表时间:
2009
期刊:
International journal of pediatric otorhinolaryngology
影响因子:
1.5
作者:
[Li-Korotky,Ha-Sheng, Lo,Chia-Yee, Zeng,Fan-Rui, Lo,David, Banks,JulianeM]
通讯作者:
Banks,JulianeM
Interaction of pneumococcal phase variation and middle ear pressure/gas composition: an in vitro model of simulated otitis media.
肺炎球菌相变与中耳压力/气体成分的相互作用:模拟中耳炎的体外模型。
DOI:
10.1016/j.micpath.2008.05.004
发表时间:
2008
期刊:
Microbial pathogenesis
影响因子:
3.8
作者:
[Li-Korotky,Ha-Sheng, Banks,JulianeM, Lo,Chia-Yee, Zeng,Fan-Rui, Stolz,DonnaB, Swarts,JDouglas, Doyle,WilliamJ]
通讯作者:
Doyle,WilliamJ
In Vivo Virulence Gene Expression in Acute Otitis Media
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批准号:7158588
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项目类别:
-
资助金额:$6.97万
-
财政年份:2005
-
负责人:HA-SHENG LI-KOROTKY
-
依托单位:
In Vivo Virulence Gene Expression in Acute Otitis Media
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批准号:7035420
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项目类别:
-
资助金额:$7.18万
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财政年份:2005
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负责人:HA-SHENG LI-KOROTKY
-
依托单位:
海外基金